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Original Articles

Development of an Immunoassay for the β-Adrenergic Agonist Ractopamine

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Pages 1-23 | Published online: 14 Apr 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (9)

Alfredo M. Montes Nino, Rodrigo H. M. M. Granja, Karine V. G. Reche, Fabio M. Giannotti, João K. G. de Souza, Sarita P. G. Ferrari, André D. dos Santos, Amarylis C. B. A. Wanschel & Alessandro G. Salerno. (2017) Laboratory validation of an LC-MS/MS method for the detection of ractopamine, clenbuterol and salbutamol in bovine and swine muscle at sub-μg kg–1 regulatory limits. Food Additives & Contaminants: Part A 34:5, pages 785-792.
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Wenqi Zhang, Xiaowei He, Pengzhan Liu, Wenmei Li & Xiaoyun Liu. (2016) Rapid Determination of Ractopamine in Porcine Urine by a Fluorescence Immunochromatography Assay. Analytical Letters 49:14, pages 2165-2176.
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Gabriel Wafula Khaemba, Bitange Nipa Tochi, Daniel Mukunzi, Isanga Joel, Lingling Guo, Steven Suryobrobowo, Shanshan Song, Hua Kuang & Chuanlai Xu. (2016) Development of monoclonal antibody and lateral test strip for sensitive detection of clenbuterol and related β2-agonists in urine samples. Food and Agricultural Immunology 27:1, pages 111-127.
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Chen Jian-Shu, Ye Hu-Ming, Yi Yu, Li Min & Ying Guo-Qing. (2011) Preparation of Chloramphenicol Artificial Immunogen and Monoclonal Antibodies. Biotechnology & Biotechnological Equipment 25:1, pages 2284-2289.
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Ai-min Zhi, Bin-bin Li, Qing-tang Liu, Xiao-fei Hu, Dong Zhao, Yu-ze Hou, Rui-guang Deng, Shu-Jun Chai & Gai-ping Zhang. (2010) Development of a lateral-flow immunochromatographic test device for the rapid detection of difloxacin residues. Food and Agricultural Immunology 21:4, pages 335-345.
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Xiangfu Ren, Fumei Zhang, Faju Chen & Tangbin Yang. (2009) Development of a sensitive monoclonal antibody-based ELISA for the detection of clenbuterol in animal tissues. Food and Agricultural Immunology 20:4, pages 333-344.
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G. Zhang, X. Wang, A. Zhi, Y. Bao, Y. Yang, M. Qu, J. Luo, Q. Li, J. Guo, Z. Wang, J. Yang, G. Xing, S. Chai, T. Shi & Q. Liu. (2008) Development of a lateral flow immunoassay strip for screening of sulfamonomethoxine residues. Food Additives & Contaminants: Part A 25:4, pages 413-423.
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WeilinL. Shelver , Young-Soon Keum, QingX. Li, TerenceL. Fodey & ChristopherT. Elliott. (2005) Development of an immunobiosensor assay for the beta-adrenergic compound zilpaterol. Food and Agricultural Immunology 16:3, pages 199-211.
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Articles from other publishers (30)

Yuan Li, Minggang Liu, Yihui Kong, Lina Guo, Xuezhi Yu, Wenbo Yu, Jianzhong Shen, Kai Wen & Zhanhui Wang. (2022) Significantly improved detection performances of immunoassay for ractopamine in urine based on highly urea-tolerant rabbit monoclonal antibody. Food and Chemical Toxicology 168, pages 113358.
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Hossein Navay Baghban, Mohammad Hasanzadeh, Yuqian Liu & Farzad Seidi. (2022) A portable colorimetric chemosensing regime for ractopamine in chicken samples using μPCD decorated by silver nanoprisms. RSC Advances 12:39, pages 25675-25686.
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Pattarachaya Preechakasedkit, Nattaya Ngamrojanavanich, Nanthika Khongchareonporn & Orawon Chailapakul. (2019) Novel ractopamine–protein carrier conjugation and its application to the lateral flow strip test for ractopamine detection in animal feed一种新型莱克多巴胺-蛋白质载体结合技术在侧向流试纸条检测动物饲料中莱克多巴胺含量中的应用. Journal of Zhejiang University-SCIENCE B 20:2, pages 193-204.
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Shuaijuan Han, Tianjiao Zhou, Bingjie Yin & Pingli He. (2018) Gold nanoparticle-based colorimetric ELISA for quantification of ractopamine. Microchimica Acta 185:4.
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Alfredo M.M. Niño, Rodrigo H.M.M. Granja, Amarylis C.B.A. Wanschel & Alessandro G. Salerno. (2017) The challenges of ractopamine use in meat production for export to European Union and Russia. Food Control 72, pages 289-292.
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Wei Zhang, Peilong Wang & Xiaoou Su. (2016) Current advancement in analysis of β-agonists. TrAC Trends in Analytical Chemistry 85, pages 1-16.
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Amin Liu, Junxiao Lin, Mingyan Dai, Bio Ma, Yingying Wu, Jiehong Fang & Mingzhou Zhang. (2015) Development of a Monoclonal Antibody-Based Immunochromatographic Assay Detecting Ractopamine Residues in Swine Urine. Food Analytical Methods 9:7, pages 2016-2025.
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Zhanhui Wang, Meixuan Liu, Weimin Shi, Chenglong Li, Suxia Zhang & Jianzhong Shen. (2015) New haptens and antibodies for ractopamine. Food Chemistry 183, pages 111-114.
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Mingyan Dai, Yunfei Gong, Amin Liu, Lulu Zhang, Junxiao Lin, Mingzhou Zhang & Xiaoping Yu. (2015) Development of a colloidal gold-based lateral-flow immunoassay for the rapid detection of phenylethanolamine A in swine urine. Analytical Methods 7:10, pages 4130-4137.
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Yaning Sun, Xiaofei Hu, Yong Zhang, Jifei Yang, Fangyu Wang, Yao Wang, Ruiguang Deng & Gaiping Zhang. (2014) Development of an Immunochromatographic Strip Test for the Rapid Detection of Zearalenone in Corn. Journal of Agricultural and Food Chemistry 62:46, pages 11116-11121.
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Liqiang Liu, Huang Kuang, Chifang Peng, Libing Wang & Chuanlai Xu. (2014) Fragment-based hapten design and screening of a highly sensitive and specific monoclonal antibody for ractopamine. Anal. Methods 6:1, pages 229-234.
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Yan Zhang, Xiang Gao, Aihua Gao & Mingtao Fan. (2012) A Biotin–Streptavidin Amplified Enzyme-Linked Immunosorbent Assay with Improved Sensitivity for Rapid Detection of Ractopamine in muscular tissue. Food Analytical Methods 5:5, pages 1214-1220.
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Pingli He, Li Shen, Rongyuan Liu, Zhiping Luo & Zhen Li. (2011) Direct Detection of β-Agonists by Use of Gold Nanoparticle-Based Colorimetric Assays. Analytical Chemistry 83:18, pages 6988-6995.
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Jieli Tang, Zhenshuang Liu, Jing Kang & Yihua Zhang. (2010) Determination of salbutamol using R-phycoerythrin immobilized on eggshell membrane surface as a fluorescence probe. Analytical and Bioanalytical Chemistry 397:7, pages 3015-3022.
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Ming-Zhou Zhang, Min-Zi Wang, Zong-Lun Chen, Jie-Hong Fang, Mei-Ming Fang, Jun Liu & Xiao-Ping Yu. (2009) Development of a colloidal gold-based lateral-flow immunoassay for the rapid simultaneous detection of clenbuterol and ractopamine in swine urine. Analytical and Bioanalytical Chemistry 395:8, pages 2591-2599.
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Yan Zhang, FengXia Wang, Li Fang, Shuo Wang & GuoZhen Fang. (2009) Rapid Determination of Ractopamine Residues in Edible Animal Products by Enzyme-Linked Immunosorbent Assay: Development and Investigation of Matrix Effects. Journal of Biomedicine and Biotechnology 2009, pages 1-9.
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Yi-Chih Lei, Yi-Fen Tsai, Yung-Te Tai, Chiu-Yueh Lin, Kuan-Huei Hsieh, Tong-Hsuan Chang, Shi-Yuan Sheu & Tzong-Fu Kuo. (2008) Development and Fast Screening of Salbutamol Residues in Swine Serum by an Enzyme-Linked Immunosorbent Assay in Taiwan. Journal of Agricultural and Food Chemistry 56:14, pages 5494-5499.
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Min LiZhimin ChenQiufang Zhu. (2007) Development and Identification of Monoclonal Antibodies Against Ractopamine. Hybridoma 26:3, pages 148-154.
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Li Shen & Pingli He. (2007) An electrochemical immunosensor based on agarose hydrogel films for rapid determination of ractopamine. Electrochemistry Communications 9:4, pages 657-662.
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Jianzhong Shen, Zhen Zhang, Yan Yao, Weimin Shi, Yibing Liu & Suxia Zhang. (2007) Time-resolved fluoroimmunoassay for ractopamine in swine tissue. Analytical and Bioanalytical Chemistry 387:4, pages 1561-1564.
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Takatoshi SAKAI, Tomomi HITOMI, Kyoko SUGAYA, Shigemi KAI, Mitsunori MURAYAMA & Tamio MAITANI. (2007) Determination Method for Ractopamine in Swine and Cattle Tissues Using LC/MS. Journal of the Food Hygienic Society of Japan (Shokuhin Eiseigaku Zasshi) 48:5, pages 144-147.
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J. P. Wang, X. W. Li, W. Zhang & J. Z. Shen. (2006) Development of Immunoaffinity Sample-Purification for GC–MS Analysis of Ractopamine in Swine Tissue. Chromatographia 64:9-10, pages 613-617.
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J. P. Wang, S. X. Zhang & J. Z. Shen. (2006) Technical Note: A monoclonal antibody-based immunoassay for determination of ractopamine in swine feeds1. Journal of Animal Science 84:5, pages 1248-1251.
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Weilin L. Shelver, Young-Soo Keum, Hee-Joo Kim, Drew Rutherford, Heldur H. Hakk, Åke Bergman & Qing X. Li. (2005) Hapten Syntheses and Antibody Generation for the Development of a Polybrominated Flame Retardant ELISA. Journal of Agricultural and Food Chemistry 53:10, pages 3840-3847.
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Weilin L. Shelver, Hee-Joo Kim & Qing X. Li. (2005) Development of a Monoclonal Antibody-Based Enzyme-Linked Immuosorbent Assay for the β-Adrenergic Agonist Zilpaterol. Journal of Agricultural and Food Chemistry 53:9, pages 3273-3280.
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Weilin L. Shelver & David J. Smith. (2004) Enzyme-Linked Immunosorbent Assay Development for the β-Adrenergic Agonist Zilpaterol. Journal of Agricultural and Food Chemistry 52:8, pages 2159-2166.
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Weilin L. Shelver & David J. Smith. (2003) Determination of Ractopamine in Cattle and Sheep Urine Samples Using an Optical Biosensor Analysis:  Comparative Study with HPLC and ELISA. Journal of Agricultural and Food Chemistry 51:13, pages 3715-3721.
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Jean-Philippe Antignac, Philippe Marchand, Bruno Le Bizec & François Andre. (2002) Identification of ractopamine residues in tissue and urine samples at ultra-trace level using liquid chromatography–positive electrospray tandem mass spectrometry. Journal of Chromatography B 774:1, pages 59-66.
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Weilin L. Shelver & David J. Smith. (2002) Application of a Monoclonal Antibody-Based Enzyme-Linked Immunosorbent Assay for the Determination of Ractopamine in Incurred Samples from Food Animals. Journal of Agricultural and Food Chemistry 50:10, pages 2742-2747.
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Weilin L. Shelver, David J. Smith & Eugene S. Berry. (2000) Production and Characterization of a Monoclonal Antibody against the β-Adrenergic Agonist Ractopamine. Journal of Agricultural and Food Chemistry 48:9, pages 4020-4026.
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